1) infrared absorbing dye
红外吸收染料
2) IR absorbing dyes
红外吸收染料
1.
The composition of thermo imaging plates as well as the IR absorbing dyes used were classified.
着重介绍了直接制版版材中热敏版的构成 ,并分类归纳了其中所用的红外吸收染料。
3) near infrared absorbing dyes
近红外吸收染料
1.
Due to the requirement of near infrared laser protective dyes and laser stealth materials, this review focused on the research progress of near infrared absorbing dyes, and some suggestions were put forward on the future research.
以激光防护和隐身材料为需求背景 ,概述了菁类染料 (含多次甲基菁染料、方酸菁和克酮酸菁染料、染料 )、酞菁类染料 (含普通酞菁和萘酞菁 )、金属络合物染料、醌型染料、偶氮染料、游离基型染料、芳甲烷型染料、类染料等近红外吸收染料的研究状况及进
4) infrared
红外
1.
Fast Analysis of Gaseous Pollutant in Environment by Handy Fourier Transform Infrared Spectrometer;
便携式傅立叶红外快速检测环境中气态污染物
2.
Recognition of Plant Parts of Tobaccos Based on Infrared and Near Infrared Spectra;
基于红外与近红外光谱的烟叶部位识别
3.
Studying status of radar and infrared composite stealthy coating materials;
涂覆型雷达/红外复合隐身材料研究现状
5) IR
红外
1.
Study on IR Extinction Performance of Graphite Micro-powder Smoke in Vacuum;
真空中石墨微粉烟幕的红外消光性能研究
2.
Preparation of Paraffin’s Microcapsule and Study on Its IR Simulation and Stealthy Performance;
石蜡微胶囊化及其红外伪装隐身性能研究
3.
The Compatibility of IR Smoke Interfering Material in Shell;
红外烟幕干扰材料在弹中的相容性
6) FTIR
红外
1.
Component analysis and content determination by TG-FTIR for thermosetting compound;
红外与热失重结合解析酚醛复合材料的成分
2.
Synthesis and Characterization of Some Manganese Sulfonates by TG and FTIR;
几种磺酸锰盐的合成及其热重和红外表征
3.
The Fourier transform infrared spectroscopy(FTIR),ultraviolet-Visible spectroscopy(UV-visible),Fourier transform Raman spectroscopy(FT-Raman),and nuclear magnetic resonance spectroscopy(1H NMR) were used to study the oxidation of spruce lignin by chloride dioxide.
采用傅里叶变换红外光谱(FTIR)、紫外-可见光谱(UV-visible)、傅里叶变换拉曼光谱(FT-Raman)以及核磁共振(1H NMR)分析技术对云杉木质素被二氧化氯氧化前后的结构变化进行了研究。
参考词条
补充资料:红外吸收染料
分子式:
CAS号:
性质:特征吸收波长在750nm以上的染料,主要类型有:酞菁与多核酞菁、卟啉和叶绿素类、亚甲基菁、特殊方形酸、苑类、偶氮、金属络合染料等。用于防伪、夜间伪装、商品条形码印刷等。
CAS号:
性质:特征吸收波长在750nm以上的染料,主要类型有:酞菁与多核酞菁、卟啉和叶绿素类、亚甲基菁、特殊方形酸、苑类、偶氮、金属络合染料等。用于防伪、夜间伪装、商品条形码印刷等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。